Key result
Intensive insulin therapy after cardiac surgery reduces hospital mortality ~55% with sustained 4-year survival.
Why the study?
The impact of intensive insulin therapy during intensive care on long-term outcomes after high-risk cardiac surgery was not well documented.
Does intensive insulin therapy during intensive care improve long-term survival and quality of life in high-risk cardiac surgery patients?
RCT (n=970)
randomized
Does intensive insulin therapy during intensive care improve long-term survival and quality of life in high-risk cardiac surgery patients?
Intensive insulin therapy during ICU stay after high-risk cardiac surgery maintains its acute survival benefit at 4 years without increasing medical care requirements, though it may compromise perceived quality of social and family life in sicker patients.
May require balancing survival gains against social and family QoL effects; leaves open net benefit of intensive insulin after cardiac surgery.
AIMS: To document the impact of intensive insulin therapy during intensive care on long-term (4 years) outcome of high-risk cardiac surgery patients. METHODS AND RESULTS: In this pre-planned sub-analysis and follow-up study of a large, randomized controlled trial on the effects of intensive insulin therapy during critical illness, we assessed long-term outcome in the 970 patients who had been admitted after high-risk cardiac surgery (mean+/-SD EuroSCORE of 6.0+/-3.7; EuroSCORE-predicted hospital mortality of 9.9%; observed hospital mortality of 7.5% in the conventional insulin group and 3.4% in the intensive insulin group). Long-term outcome was quantified as: (a) 4 years survival; (b) incidence of hospital re-admission; (c) level of activity and medical care requirements at 4 years as assessed by the Karnofsky score; and (d) perceived health-related quality-of-life at 4 years as assessed by the Nottingham Health Profile. Four years after ICU admission, the number of post-hospital discharge deaths was similar in the two study groups, reflecting maintenance of the acute survival benefit with intensive insulin therapy. Survivors who had been treated with intensive insulin during ICU stay revealed a similar risk for hospital re-admission and a comparable level of dependency on medical care. There was no effect on quality-of-life in the total group, whereas the increased survival of sicker patients with at least 3 days of insulin therapy evoked a more compromised perceived quality-of-life, in particular regarding social and family life. CONCLUSION: The short-term survival benefit obtained with insulin-titrated glycaemic control during intensive care after cardiac surgery was maintained after 4 years, without inducing increased medical care requirements but possibly at the expense of compromised perceived quality of social and family life.
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Ingels et al. (2006) conducted an RCT in High-risk cardiac surgery (n=970). Intensive insulin therapy vs. Conventional insulin therapy was evaluated on 4 years survival, hospital re-admission, medical care requirements, and quality-of-life. Intensive insulin therapy during intensive care after high-risk cardiac surgery reduced hospital mortality (3.4% vs 7.5%) and maintained this survival benefit at 4 years.
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